A particle in a one-dimensional infinite square well defined in the region 0 < ¢
A particle in a one-dimensional infinite square well defined in the region 0 < ¢
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n (=) = VZ sin ()
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O the (=) = VE sin(#)
n (x) = sin( nmE
v. (=) = / cos ()
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Transcribed Image Text:A particle in a one-dimensional infinite square well defined in the region 0 < ¢ <Lcan be written as
n (=) = VZ sin ()
%3D
O the (=) = VE sin(#)
n (x) = sin( nmE
v. (=) = / cos ()
%3D

Transcribed Image Text:Question 30
Which of the following is true about the Klein-Gordon equation?
O The Klein-Gordon equation is the relativistic generalization of the Schrodinger equation.
O The Klein-Gordon equation applies to spin-zero particle.
O The Klein-Gordon equation correctly predicts the spin of the electron.
O The Klein-Gordon equation gives the correct energy levels in hydrogen.
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